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4. Metals and Non-metals Learning Objectives By the end of the lesson, you will be able to: ☑ distinguish between metals and non-metals ☑ describe the physical and chemical properties of metals and non-metals ☑ list the uses of some metals and non-metals MINERALS AND ORES You have learnt that all materials Here is the exact text from the image:are made up of basic substances called elements, and that elements cannot be split into simpler substances by chemical methods. There are 118 known elements. Sodium, zinc, gold, mercury, iron, lead, barium and tin (metals); and hydrogen, oxygen, carbon, sulphur, chlorine, boron, neon and radon (non-metals) are some examples. Only certain unreactive elements are found free in nature. Others occur in combined states as minerals. A mineral is a solid inorganic substance that is found in nature. A mineral deposit that can be mined and from which an element or compound can be obtained profitably is known as an ore. Elements can be broadly classified into two groups—metals and non-metals. Table 4.1 Some common ores Fig. 4.1 Some common ores a. Bauxite (aluminium) b. Malachite (copper) c. Haematite (iron) d. Galena (lead) e. Apatite (phosphorus) f. Quartz (silicon) -- --- METALS All except 20 of the known elements are metals. Most metals are reactive; they combine with other elements in nature, such as oxygen and sulphur, and occur as oxides, sulphides and carbonates. Only a few unreactive metals like gold, silver and platinum are found as free metals in the Earth's crust. Physical Properties of Metals Metals are solids at room temperature, except mercury, which is a liquid at room temperature (Fig. 4.2(a)). They are generally hard and strong, with a few exceptions such as sodium and potassium, which are soft and can be easily cut with a knife (Fig. 4.2(b)). They have a metallic lustre (shine), especially when freshly cut. They have high melting and boiling points, with a few exceptions like sodium, potassium and mercury. They are good conductors of heat and electricity. Silver and copper are the best conductors of electricity, followed by gold and aluminium. Metals are sonorous. They produce a ringing sound when struck. Most metals have high tensile strength. They can take heavy loads without breaking. They are malleable. Metals, with exceptions like sodium and potassium, can be beaten into thin sheets and foils. They are ductile. Metals, with exception like sodium and potassium, can be drawn into wires. Most metals have high density. However, sodium and potassium have low density and float on water. Fig. 4.2 Special metals a. Mercury b. Sodium --- Chemical Properties of Metals Reaction with oxygen Metals react with oxygen under different conditions to form basic oxides. These basic oxides react with water to form bases. Sodium and potassium react vigorously with oxygen at room temperature. 4Na + O_2 \rightarrow 2Na_2O To prevent this oxidation, sodium and potassium are stored under kerosene. Magnesium reacts with oxygen only when ignited. It burns with a dazzling bright flame and forms a white powder of magnesium oxide. 2Mg + O_2 \rightarrow 2MgO Copper and iron react with oxygen only when heated to a very high temperature. 2Cu + O_2 \rightarrow 2CuO --- --- Reaction with water Metals react with water to form hydroxides or oxides, along with hydrogen. Different metals react at different temperatures. Sodium, potassium, and calcium react with cold water to form hydroxides. 2Na + 2H_2O \rightarrow 2NaOH + H_2 Magnesium Reacts with steam or hot water to form magnesium oxide. Mg + H_2O \rightarrow MgO + H_2 Aluminium Forms an oxide too, but this oxide forms a protective covering over the metal and prevents further reactions. 2Al + 3H_2O \rightarrow Al_2O_3 + 3H_2 Zinc Reacts only with steam. Zn + H_2O \rightarrow ZnO + H_2 Iron Reacts with steam when heated strongly. 2Fe + 3H_2O \rightarrow Fe_3O_4 + 3H_2 Copper, gold, silver, and platinum do not react with water at all. --- Activity 4.1 Teacher Demonstration Aim: To study the reaction of metals with water. [Caution: This activity should be demonstrated by the teacher, and students should stand away from the table.] Materials required: Two 200 mL beakers Pieces of sodium and calcium Forceps Knife Litmus papers Water Method: 1. Fill each beaker with 100 mL of water. 2. Using forceps and a knife, cut a small piece of sodium. 3. Dry it on a tissue paper and drop it into one of the beakers. 4. Repeat the same procedure with calcium. 5. Test the water in both the beakers with red and blue litmus papers. Observations and Conclusions: Sodium reacts vigorously and may explode. A gas is also released. The reaction with calcium is quick, though not as vigorous as that with sodium. In both cases, the red litmus paper turns blue, showing that the solutions are bases. --- Reaction with dilute acids Most metals react with dilute acids to form their salts and liberate hydrogen gas. The reaction with reactive metals like sodium, potassium, and calcium is violent. Magnesium, aluminium, zinc, and iron do not react violently. Mg + 2HCl \rightarrow MgCl_2 + H_2 Copper, silver, gold, and platinum do not react with dilute acids. --- Reaction with bases Only some metals such as aluminium and zinc react with strong bases like sodium hydroxide to liberate hydrogen gas. Zn + 2NaOH \rightarrow Na_2ZnO_2 + H_2 --- Activity 4.2 Aim: To study the reaction of metals with dilute hydrochloric acid. Materials required: Sandpaper Six test tubes Dilute hydrochloric acid Strips of magnesium, zinc, iron, tin, lead, and copper Method: 1. Clean the metal strips with sandpaper. 2. Add dilute hydrochloric acid to the six test tubes. 3. Insert a strip of metal into each test tube. Observe if any bubbles are formed in the test tubes. If no bubbles are seen, warm them gently in a beaker of hot water. 4. Observe the speed at which gas is generated. This gives an idea of the speed of the reaction. 5. Classify the metals in order of their reactivity with dilute hydrochloric acid. [Caution: Acids are corrosive and should be handled carefully.] --- Activity 4.3 Aim: To study the reaction of metals with bases. Materials required: Small piece of zinc Beaker Sodium hydroxide Method: 1. Prepare warm sodium hydroxide or caustic soda solution. 2. Drop the piece of zinc into it. Observations and Conclusions: You will notice that zinc reacts with sodium hydroxide to liberate hydrogen gas. Observations on Metals with Dilute Acids Metals like sodium, potassium, and calcium react violently with dilute acids to liberate hydrogen gas. Magnesium, aluminium, zinc, and iron also displace hydrogen from dilute acids, but the reaction is not violent. Metals such as copper, silver, gold, and platinum do not displace hydrogen from dilute acids. --- Activity Series of Metals The activity series of metals is the arrangement of metals in decreasing order of reactivity. The series in the book shows reactivity decreasing from top to bottom. Potassium is the most reactive metal while gold is the least reactive. --- Displacement of a Metal by Other Metals A more reactive metal displaces a less reactive metal from its compounds in an aqueous solution. Some examples: Mg + CuSO_4 \rightarrow MgSO_4 + Cu Zn + FeSO_4 \rightarrow ZnSO_4 + Fe Iron can displace copper from copper sulphate solution (as shown in Activity 4.4). The solution turns green, and reddish-brown copper deposits on the iron nail. Copper cannot displace iron from iron sulphate solution, showing that copper is less reactive than iron. Cu + FeSO_4 \rightarrow \text{No reaction} Question: What do you think will happen if you place a silver spoon in copper sulphate solution? --- Activity 4.4 - Displacement Reaction Aim: To study a displacement reaction. Materials Required: Test tube Iron nail Copper sulphate solution Method: 1. Fill the test tube with copper sulphate solution (blue in colour). 2. Place the clean iron nail in the solution. Observations and Conclusions: After about an hour, the solution changes to green, and a reddish-brown deposit is formed on the iron nail. --- Corrosion of Metals Corrosion is the destruction or damage of a material due to chemical reaction. Rusting of iron happens when iron is exposed to moist air, forming a reddish-brown layer of rust. Rust is iron oxide, which eventually flakes off, damaging the object. Definition written on the page: "Slow eating of a metal’s surface due to oxidation is called corrosion of metals." --Observations on Metals with Dilute Acids Metals like sodium, potassium, and calcium react violently with dilute acids to liberate hydrogen gas. Magnesium, aluminium, zinc, and iron also displace hydrogen from dilute acids, but the reaction is not violent. Metals such as copper, silver, gold, and platinum do not displace hydrogen from dilute acids. --- Activity Series of Metals The activity series of metals is the arrangement of metals in decreasing order of reactivity. The series in the book shows reactivity decreasing from top to bottom. Potassium is the most reactive metal while gold is the least reactive. --- Displacement of a Metal by Other Metals A more reactive metal displaces a less reactive metal from its compounds in an aqueous solution. Some examples: Mg + CuSO_4 \rightarrow MgSO_4 + Cu Zn + FeSO_4 \rightarrow ZnSO_4 + Fe Iron can displace copper from copper sulphate solution (as shown in Activity 4.4). The solution turns green, and reddish-brown copper deposits on the iron nail. Copper cannot displace iron from iron sulphate solution, showing that copper is less reactive than iron. Cu + FeSO_4 \rightarrow \text{No reaction} Question: What do you think will happen if you place a silver spoon in copper sulphate solution? --- Activity 4.4 - Displacement Reaction Aim: To study a displacement reaction. Materials Required: Test tube Iron nail Copper sulphate solution Method: 1. Fill the test tube with copper sulphate solution (blue in colour). 2. Place the clean iron nail in the solution. Observations and Conclusions: After about an hour, the solution changes to green, and a reddish-brown deposit is formed on the iron nail. --- Corrosion of Metals Corrosion is the destruction or damage of a material due to chemical reaction. Rusting of iron happens when iron is exposed to moist air, forming a reddish-brown layer of rust. Rust is iron oxide, which eventually flakes off, damaging the object. Definition written on the page: "Slow eating of a metal’s surface due to oxidation is called corrosion of metals." Uses of Metals (Continued) Aluminium Used in high-voltage electric lines. Alloys like duralumin and magnalium are used in aircraft and automobile bodies. Used for making aluminium foil and cooking utensils. Copper Good conductor of electricity → Used in electrical wires, cables, motors, and transformers. Good conductor of heat → Used in the bottoms of stainless steel vessels. Zinc Used to make corrosion-resistant galvanised iron (GI) pipes and sheets. Used as an electrode in dry cells. Other Metals Gold and silver → Used in jewellery. Lead → Used in electrodes of lead storage batteries (used in automobiles and inverters). Chromium → Used for electroplating iron to give a shiny, corrosion-resistant finish. --- Looking Back (True/False Statements) 1. Gold, silver, and platinum are found in the Earth’s crust as free metals. → True 2. Most metals are solids that are soft. → False 3. Metals such as zinc and magnesium react with dilute acids to liberate oxygen. → False 4. A less reactive metal displaces a more reactive metal from its aqueous solution. → False 5. The chemical name of rust is zinc oxide. → False (Rust is Fe₂O₃.xH₂O) 6. Coating zinc objects with iron is called galvanising. → False (Galvanising is coating iron with zinc) Non-Metals Physical Properties of Non-Metals Exist as gases or solids at room temperature (except bromine, which is liquid). Not as hard as metals (except diamond, which is very hard). Low tensile strength and low density. Low melting and boiling points (except graphite). Not sonorous (do not produce a ringing sound). Not malleable or ductile (cannot be beaten into sheets or drawn into wires). Do not have lustre (except iodine and graphite). Bad conductors of heat and electricity (except graphite, and silicon under specific conditions). --Chemical Properties of Non-Metals Reaction with Water Most non-metals do not react with water. Highly reactive non-metals (e.g., phosphorus) catch fire in air, so they are stored in water. Fluorine, chlorine, and bromine react with water to form acids. Reaction with Oxygen Non-metals react with oxygen to form acidic or neutral oxides. Carbon and sulfur react with oxygen to form acidic oxides, which dissolve in water to form acids. Some oxides (e.g., CO, N₂O) are neutral and do not form acids. Examples: Carbon + Oxygen → Carbon Dioxide (CO₂) CO₂ + Water → Carbonic Acid (H₂CO₃) Sulfur + Oxygen → Sulfur Dioxide (SO₂) SO₂ + Water → Sulfurous Acid (H₂SO₃) Reaction with Acids Unlike metals, non-metals do not replace hydrogen in acids. Silicon reacts with hydrofluoric acid (HF). --Uses of Non-Metals Hydrogen Used in the manufacture of ammonia and industrial chemicals. Used in vanaspati (a cooking oil). Oxygen Used in breathing support systems in hospitals. Used with other gases in equipment to weld metals. Sulphur Used in the manufacture of sulphuric acid, sulphur dioxide gas, and other industrial chemicals. Used to make pesticides for agriculture. Used in vulcanising rubber (making it harder) and in gunpowder. Nitrogen Used in the manufacture of ammonia and nitrogenous fertilisers like ammonium nitrate and ammonium sulphate. Used as an inert gas in processed food packaging to prevent rancidity. Silicon Used in making semiconductors for microchips. Silicates (oxides of silicon) are used in making glass. Other Non-Metals Phosphorus: Used in making fertilisers (superphosphates). Chlorine: Used for disinfecting drinking water. Argon: Used in welding stainless steel and filling electric bulbs. Helium: Used in balloons for meteorological observations. Neon: Used in fluorescent lights for advertisement displays
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**Properties of Matter** - **Physical vs Chemical Properties** - *Physical Properties:* Can be observed without changing the substance (e.g., color, density, melting point, boiling point) - *Chemical Properties:* Describe a substance’s ability to undergo chemical changes (e.g., flammability, reactivity with acid) - **Examples of Each** - Physical: Ice melting, water boiling, density, solubility - Chemical: Rusting iron, burning wood, tarnishing silver - **Intensive vs Extensive Properties** - *Intensive:* Do not depend on the amount of matter (e.g., density, boiling point, color) - *Extensive:* Depend on the amount of matter (e.g., mass, volume, length) --- **Density** - **Definition, Units, and Formula** - Density (ρ) = Mass (m) / Volume (V) - Units: g/cm³ (solids), g/mL (liquids), kg/m³ (gases) - **Comparison of Densities** - Solids: Generally highest density - Liquids: Lower density than solids but higher than gases - Gases: Lowest density - **Solid: Regular vs Irregular Shape** - *Regular Shape:* Use geometric formulas to find volume - *Irregular Shape:* Use water displacement method - **Factors Affecting Density** - Temperature (increase decreases density for most substances) - Pressure (affects gases significantly) - Composition (different materials have different densities) --- **Elements, Compounds, and Mixtures** - **Matter: Definition and Examples** - Anything that has mass and takes up space (e.g., air, water, rocks) - **Pure vs Impure Matter** - *Pure:* Elements and compounds (e.g., oxygen, water) - *Impure:* Mixtures (e.g., saltwater, air) - **Atom vs Element** - *Atom:* Smallest unit of an element - *Element:* Substance made of one type of atom - **Compounds vs Mixtures** - *Compounds:* Chemically bonded elements (e.g., H2O, CO2) - *Mixtures:* Physically combined substances (e.g., salad, air) - **Types of Mixtures** - Homogeneous (solutions, uniform throughout) - Heterogeneous (distinct parts, not uniform) - **Examples of Mixtures** - Homogeneous: Saltwater, air - Heterogeneous: Salad, granite --- **Solubility** - **Solutions** - *Parts:* Solute (dissolved substance) + Solvent (dissolving substance) - *Examples:* Saltwater (solute: salt, solvent: water) - **Effect of Temperature and Pressure** - Higher temperature increases solubility of solids in liquids - Higher pressure increases solubility of gases in liquids - **Gases vs Liquids** - Gases dissolve better in cold liquids under high pressure - Liquids dissolve better at higher temperatures - **Gaseous, Liquid, and Solid Solutions** - Gaseous: Air (oxygen in nitrogen) - Liquid: Saltwater (NaCl in H2O) - Solid: Alloys (brass, steel) - **Concentrations** - Unsaturated: Can dissolve more solute - Saturated: Maximum solute dissolved - Supersaturated: Holds more than normally possible - **Solubility Curve** - Shows solubility vs temperature - Higher points indicate higher solubility --- **The Mole** - **Avogadro’s Number** - 6.022 x 10^23 particles per mole - **Molar Mass** - Mass of one mole of a substance (g/mol) - **Particle, Mass, and Mole Calculations** - Particle calculations: Using Avogadro’s number - Mass calculations: Converting between grams and moles - Mole calculations: Determining amount of substance - **Moles at STP (Standard Temperature and Pressure)** - 1 mole of gas = 22.4 L at STP - **Atomic Mass Units (AMU)** - Unit for atomic/molecular mass --- **Labs** - **Density Lab** - Measure mass and volume, calculate density - Compare densities of different materials - **Elements, Compounds, and Mixtures Lab** - Classify substances based on their properties - **Mystery Powder Lab** - Identify unknown substances using solubility and reactions - **Cornstarch Lab** - Explore properties of non-Newtonian fluids This guide covers essential concepts in matter, density, solubility, and the mole, along with relevant lab activities
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Urban Temperatures
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UNIT ONE: CANADA AND THE WORLD Focus Questions: •What is the approx. population of Canada? 41 million (41 288 599 • Map of Canada o Name the 3 oceans that touch Canada – be able to locate them on a map Pacific ocean Arctic ocean Atlantic Ocean o Name the 10 provinces and their capital cities British Columbia (Victoria) Alberta (Edmonton) Saskatchewan (Regina) Manitoba (Winnipeg) Ontario (Toronto) Quebec (Quebec City) Newfoundland and Labrador (St.John’s) Prince Edward Island (Charlottetown) New Brunswick (Fredericton) Nova Scotia (Halifax) o Name the 3 territories and their capital cities Yukon Territory (White Horse) Northwest Territories (Yellowknife) Nunavut (Iqaluit) o Locate the provinces and territories but not the capital cities (just know them for each province and territory) •What are the 6 factors of the HDI? Life expectancy (how long you can live) Population Growth (how fast the population grows) Education (access the opportunity to learning) Health Care (access to availability to health) Wealth (measures the wealth of the nation) Food supply (measures the availability of nutrition) •What is a Developed Country? Describe it and list 3 developed countries A developed country is in higher demand in living conditions. I.e. higher social and economic levels, average incomes, many luxuries. -20% of the world's population live in these countries Canada USA Japan Spain France •What is a Developing Country? Describe it and list 3 developing countries A developing country is in lower demand for living conditions. I.e. lower social and economic level, high levels of poverty. Primary industry is agriculture→in order to feed themselves and to trade for money Ethiopia Nigeria Rwanda Bangladesh Pakistan •What are cash crops? Which countries grow these? Cash crops are crops that are grown to be sold for money (exports) Crops that are grown: -Bananas/tropical fruit -Mango -Cocoa beans -Coconuts -Coffee beans -Dragon fruit -Cotton -Sugar •Which country gives the most in foreign aid money? Foreign Aid: Money, food or other resources given by one country to another to promote development and welfare United states gives the most in foreign aid money ($66.04 billion) UNIT TWO: INTERACTIONS IN THE PHYSICAL ENVIRONMENT Focus Questions: •What is Pangaea and who came up with this idea and what did he call the theory? 200 million years ago the continents formed a single giant land mass supercontinent called Pangaea and started to split up -Alfred Wegner came up with this theory and named it continental drift •What evidence did Wegener have to prove his theory? There were 4 PUZZLE PIECES- Shorelines of the continents seem to fit together like a puzzle piece (east coast of South America fit with the west coast of Africa) SIMILAR FOSSILS AND ROCK TYPES Similar rock types were found in these two locations despite the fact that they were thousands of km apart (East coast of south america and west coast of africa) LOCATION OF MOUNTAINS Wegener found mountains formed 300 million years ago that are similar in age and structure on both sides of the Atlantic ocean EVIDENCE OF ICE SHEETS Ice sheets covered southern Africa, India and Australia about 250 million years ago •What are the 4 layers of the earth and which is liquid? Crust Mantel Outer core (Liquid layer) Inner core •What is the Ring of Fire and where is it located? An area where large amounts of earthquakes and volcanic eruptions occur The Ring of Fire is a direct result of plate tectonics and the movement and collisions of plates. Located in: Basin of the Pacific Ocean •Landform Regions of Canada o Review the map o Which landform region do you live in? Toronto is in this landform region. I live in the Great Lakes-St Lawrence Lowland region. o Which landform region has the Rocky Mountains? Western Cordillera o Which landform region is near the Pacific Ocean? Western Cordillera o Which landform region is the furthest north? Innuitian Mountains o Which landform region is the smallest? Great Lakes-St. Lawrence Lowlands o Which landform region is the largest? Canadian Shield •Which landform region is known as the Breadbasket with large wheat farms? Interior Plains • Define climate and weather – what is the difference? Weather The day to day conditions of the atmosphere -Short periods of time -Small areas -Temperature and precipitation Climate Weather conditions of a large area for a long period of time DIFFERENCE TIME PERIOD- Weather describes atmospheric conditions over a few days while climate describes many years (around 20) LAND AREA- Weather=localized (ex. Rainy in brampton and sunny in vaughan) Climate=regionalized (ex. All of southern Ontario has the same climate) •What are the factors that affect climate? List them (LOWERN) Latitude Ocean Currents Wind currents Elevation Relief Nearness to water o Which one might affect the coast of BC the most Nearness to water affects BC the most. o Which one might affect the Arctic the most Latitude •What are the 3 ocean currents that affect Canada? Where are they? Pacific- West coast Arctic- Northern Atlantic- Eastern • Maritime vs continental MARITIME: -Mainly found along the eastern and western coasts (typcial climate fo areas near the coast -Mild winters and summers -Frequent precipitation (close to or usually over 1000mm a year, lowest around 900) Examples- Vancouver, British Columbia or St. john’s NFL or Halifax, Nova Scotia CONTINENTAL: -Typical climate of areas more inland in the interior of Canada (Prairie provinces such as Alberta, Saskatchewan and Manitoba) -Variations of temperature because of the lack of bodies of water (Hot summers and very cold winters) -Increased temp fluctuations (high summer temps and low winter temps) -Less precipitation (usually 200-1000 of rain a year) Examples- Regina, Saskatchewan, Calgary, Alberta, Winnipeg, Manitoba, and Ottawa, Ontario • Climate Graphs and how to do the calculations: Climate graphs show TOTAL MONTHLY PRECIPITATION and AVERAGE MONTHLY TEMPERATURES typically in a particular location o What is the formula for calculating the average temperature? Add up all the temperatures and divide by 12 (℃) o What is the formula for calculating the total precipitation? Add up all the monthly precipitation totals (mm) o What is the formula for calculating the temperature range? The highest temperature minus the lowest temperature (℃) o Can you figure out how to find the month with the highest temperature and the Lowest temperature On a graph you look at the highest points and the lowest • Name the climate region by the Pacific Ocean Pacific Maritime • Name the climate region by the Atlantic Ocean Atlantic Maritime • Name the climate region in Canada’s far north Arctic • Name the climate region you live in. Boreal •Which climate region is a frozen desert? Arctic •What is global warming? The rising of the average temperature on Earth o Why does it happen? Global warming happens because of the greenhouse gases that are emitted into the Earth’s atmosphere. o What activities cause it? Are they mainly human made reasons? NATURAL CAUSES (cannot be caused by humans) MAN MADE CAUSES (Human actions) Temperature fluctuations of the planet Volcanic eruptions Increased solar activity Transportation Manufacturing Oil drilling Farming Deforestation MAN MADE CAUSED OVERPOWER NATURAL CAUSES o Which gases are most responsible for global warming? Where do they come from? Four main gases that absorb radiation are H20- water vapor CO2- Carbon Dioxide (burning fossil fuels and Deforestation) CH4- Methane (agriculture) N2O- Nitrous Oxide (Agriculture) o Which is the worst greenhouse gas? Carbon Dioxide o How does it happen - Explain the process of global warming Sun emits energy in the form of SHORTWAVE RADIATION which can go through anything clear Reaches earth and absorbs but some escapes back into space Long Wave cannot go through anything (not even greenhouse gases) Longwave returns back to Earth making it hotter than it should be o What is the difference between longwave vs shortwave radiation? Short wave- Can go through anything clear Long wave- Cannot go through anything o What might be some global warming problems in Canada Changes rain and snow patterns Migration and life cycles Less snow and ice Higher temperatures and more heat waves UNIT THREE: CHANGING POPULATIONS AND L IVABLE COMMUNITIES Focus Questions: •What is a census? A census is used to count the population and learn important data •Where does the majority of Canada’s population live? Ontario • Name the 4 main classes of immigrants to Canada? Economic Class Family class Refugees Humanitarian and other •Which class of immigrants goes through the point system and how many points do they need to earn? ECONOMIC CLASS- 67/100 points •What factors can you earn points for? Hasn't committed a serious Doesn’t pose a risk to Canada’s security Hasn’t violated human or internationa rights Is in good health (determined by a medical exam) Has a valid passport or travel document Anyone applying to live permanently in Canada must provide A police certificate or criminal record check Their photo and fingerprints if over 14 or under 79 years of age •From which class does Canada accept the most immigrants? Economic Class •Which people can immigrate to Canada in the Family Class Immigrants? FAMILY CLASS: -Parents -Spouses -Children joining family members that are already living in Canada •What is a refugee? Two Main types of resettled refugees: GOVERNMENT ASSISTED PRIVATELY SPONSORED Referred by the UN refugee agency based on their location and vulnerability and are getting government assistance during this transition Brought to Canada by government approved citizens and organizations that assume legal and financial responsibility for them Refugees cannot apply directly to be resettled in Canada All refugees undergo screening by Canadian officials and generally have permanent resident status when they arrive. • Define and list examples of push factors for immigrants PUSH FACTORS (Reasons for leaving your home country to go live in another one, what pushes people out?) War and conflict Natural disasters Unfair political reasons Poverty Limited rights and freedoms Lack of employment Racial persecution Religious persecution Lack of services- lack of access to education and healthcare Dislike the climate No family • Define and list examples of pull factors for immigrants PULL FACTORS (Reasons to choose a country to go live in (what pulls people to come?) Religious freedom Marriage Opportunities for better employment Family Improve standard of living Favourable climate Democratic government More rights and freedoms •Population pyramids It is a diagram that gives information about a country’s population breakdown by age and gender for any year % of males and females in each group The proportion of young people (0-14 years old) The proportion of Working people (15-64 years old) The proportion of Elderly people (65 and older) o How do you calculate the total % of children in a population? Add the percentages from 0-14 o How do you calculate the total % of working population Add the percentages from 15-64 years old o How do you calculate the total % of seniors in a population? Add the percentages from 65 and above o What is dependency load and how do you calculate it? The % of the population that does not work and so it depends on the working population (Add the % of children and the % of seniors to get a total %) o pyramid with a wide base means what? POPULATION GROWTH o A pyramid with a narrow base means what? POPULATION DECLINE •What is a baby boomer? In 1950, after WW2, many families began to have children which meant the birth rate was very high. (1950-1965) -As the baby boomers grow older Canada’s population will continue to age as there is so many of them to still age •What is a centenarian? A person who is 100 years old and above •What does the greying of Canada’s population mean? Population is getting older so it is aging as a whole and not made up of mainly young people o Why is this happening? There are 2 main reasons – can you explain them? INCREASE IN LIFE EXPECTANCY - Life expectancy in Canada is currently 83 years old for men and 84 for women - More Canadians than ever before are living to 85 and beyond DECREASE IN BIRTH RATES - People are not having large families anymore as woman no longer stay home and choose to work, children are expensive and not everyone gets married today o what are some of the problems we can encounter as a country in the future if this continues? More Candians are receiving old age pension and are seeking more health care and services = expensive to have many seniors Proportionally fewer people are working and paying income tax = less money available Housing and transportation needs are changing, as is consumption, which is shifting towards goods and services for seniors The # of families made up of couples whose children have left home is also on the rise •Where does the majority of Canada’s population live? ONTARIO UNIT FOUR: CANADIAN INDUSTRIES AND RESOURCE Focus Questions: •What is an Ecological Footprint? THE AMOUNT OF THE ENVIRONMENT NECESSARY TO PRODUCE THE GOODS AND SERVICES NECESSARY TO SUPPORT OUR LIFESTYLES -It is a way of looking at how much of the Earth we each use to live the life that we are in this country -An area of land and water that would be required to provide for a countries populations resources and absorb its waste o How is it measured? Calculated in hectares of land, and is used to calculate the amount of Earth’s bio-productive space needed to keep a population at its current level of resource consumption -Use the amount of land area / person o Which countries have large footprints? CHINA USA INDIA o Which countries have small footprints ETHIOPIA MALI o How does a footprint get larger? o What can be done to reduce a footprint? Switch of the lights Take the stairs AC on? Shut the windows Take shorter showers Power down laptops Unplug electronics when not in use Keep room temp moderate Do full laundry loads Use fewer or share appliances Switch to LED lightbulbs •What is sustainable development? Meeting present needs without compromising the chances of future generations to meet their needs •What is an export? The selling of goods and services to another country •What is an import? The buying of goods and services from another country • Name and explain the 3 main types of industries found in Canada and what they do PRIMARY SECTOR (Resource based industries) SECONDARY SECTOR (Manufacturing) TERTIARY SECTOR (service industries) Harvesting or extracting raw materials from nature JOBS: -Mining -Famers -Fishers -Foresters -oil workers Converting raw materials into fishing products JOBS: -Factory workers -Food processors -Construction workers Providing services to businesses and consumers JOBS: -Retail workers -Teachers -Nurses -Dentists -Restaurant staff -Lawyers -Electrician o Which sector employs the most people SERVICE INDUSTRIES (76% OF CANADA’S POPULATION) •List the conventional sources of energy FOSSIL FUELS NUCLEAR ENERGY NATURAL GASES •List the alternative sources of energy SOLAR ENERGY WIND ENERGY HYDROELECTRICITY GEOTHERMAL BIOMASS O what are some of the advantages of alternative energy forms? -Never runs out -Abundant (more power than needed) -Sustainable (energy were getting now is gonna be the same later) -Clean •Which sources of energy are renewable and which are non renewable? ALTERNATIVE= RENEWABLE CONVENTIONAL= NON RENEWABLE •Which source of energy does Canada produce the most? ALTERNATIVE SOURCES (hydroelectricity) •Which sector of the economy uses the most energy? PRIMARY SECTOR (RESOURCE BASED INDUSTRIES) •Which sources are Canadians dependent on? ALTERNATIVE SOURCES •Which province has a lot of production of fossil fuels? ALBERTA WHEN YOU ARE DONE THIS REVIEW, COMPLETE THE PRACTICE SHEET
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Temperatures
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Spanish temperatures
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ENE-1.D = Describe the properties of enzymes. The structure of enzymes includes the active site that specifically interacts with substrate molecules For an enzyme-mediated chemical reaction to occur = the shape & charge of the substrate must be compatible with the active site of the enzyme ENE-1.E = Explain how enzymes affect the rate of biological reactions The structure and function of enzymes contribute to the regulation of biological processes Enzymes are biological catalysts that facilitate chemical reactions (speed up) in cells by lowering the activation energy ENE-1.F = Explain how changes to the structure of an enzyme may affect its function Change to the molecular structure of a component in an enzymatic system may result in a change of the function or efficiency of the system Denaturation of an enzyme occurs when the protein structure is disrupted → eliminating the ability to catalyze reactions Environmental temperatures & pH outside the optimal range for a given enzyme will cause changes to its structure → altering the efficiency with which it catalyzes reactions In some cases, enzyme denaturation is reversible → allowing the enzyme to regain activity ENE-1.G = Explain how the cellular environment affects enzyme activity Environmental pH can alter the efficiency of enzyme activity = including through disruption of hydrogen bonds that provide enzyme structure The relative concentrations of substrates & products determine how efficiently an enzymatic reaction proceeds Higher environmental temperatures increase the speed of movement of molecules in a solution → increasing the frequency of collisions between enzymes & substrates → therefore increasing the rate of reaction Competitive inhibitor molecules can bind reversibly or irreversibly to the active site of the enzyme Noncompetitive inhibitors can bind allosteric sites = changing the activity of the enzyme ENE-1.H = Describe the role of energy in living organisms All living systems require constant input of energy Life requires a highly ordered system & does not violate the second law of thermodynamics Energy input must exceed energy loss to maintain order & to power cellular processes Cellular processes that release energy may be coupled with cellular processes that require energy Loss of order or energy flow results in death Energy-related pathways in biological systems are sequential to allow for a more controlled & efficient transfer of energy A product of a reaction in a metabolic pathway is generally the reactant for the subsequent step in the pathway ENE-1.I = Describe the photosynthetic processes that allow organisms to capture & store energy Organisms capture & store energy for use in biological processes Photosynthesis captures energy from the sun & produces sugars Photosynthesis first evolved in prokaryotic organisms Scientific evidence supports the claim that prokaryotic (cyanobacterial) photosynthesis was responsible for the production of an oxygenated atmosphere Prokaryotic photosynthetic pathways were the foundation of eukaryotic photosynthesis The light-dependent reactions of photosynthesis in eukaryotes = involve a series of coordinated reaction pathways that capture energy present in light to yield ATP & NADPH (power the production of organic molecules) ENE-1.J = Explain how cells capture energy from light & transfer it to biological molecules for storage & use During photosynthesis = chlorophylls absorb energy from light = boosting electrons to a higher energy level in photosystems I & II Photosystems I & II are embedded in the internal membranes of chloroplasts & are connected by the transfer of higher energy electrons through an electron transport chain (ETC) When electrons are transferred between molecules in a sequence of reactions as they pass through the ETC = an electrochemical gradient of protons (hydrogen ions) is established across the internal membrane The formation of the proton gradient is linked to the synthesis of ATP from ADP & inorganic phosphate via ATP synthase The energy captured in the light reactions & transferred to ATP + NADPH = powers the production of carbohydrates from carbon dioxide in the Calvin cycle (which occurs in the stroma of the chloroplast) ENE-1.K = Describe the processes that allow organisms to use energy stored in biological macromolecules Fermentation & cellular respiration = use energy from biological macromolecules to produce ATP Respiration & fermentation = characteristic of all forms of life Cellular respiration in eukaryotes = involves a series of coordinated enzyme-catalyzed reactions that capture energy from biological macromolecules The electron transport chain = transfers energy from electrons in a series of coupled reactions that establish an electrochemical gradient across membranes Electron transport chain reactions = occur in chloroplasts / mitochondria / prokaryotic plasma membranes In cellular respiration = electrons delivered by NADH & FADH2 = passed to a series of electron acceptors (as they move toward the terminal electron acceptor = oxygen) In photosynthesis = the terminal electron acceptor is NADP+ Aerobic prokaryotes = use oxygen as a terminal electron acceptor anaerobic prokaryotes = use other molecules The transfer of electrons = accompanied by the formation of a proton gradient across the inner mitochondrial membrane / the internal membrane of chloroplasts (with the membrane(s) separating a region of high proton concentration from a region of low proton concentration In prokaryotes = the passage of electrons is accompanied by the movement of protons across the plasma membrane. The flow of protons back through membrane-bound ATP synthase by chemiosmosis drives the formation of ATP from ADP & inorganic phosphate known as oxidative phosphorylation in cellular respiration photophosphorylation in photosynthesis In cellular respiration = decoupling oxidative phosphorylation from electron transport generates heat This heat can be used by endothermic organisms to regulate body temperature ENE-1.L = Explain how cells obtain energy from biological macromolecules in order to power cellular functions Glycolysis = a biochemical pathway that releases energy in glucose to form ATP from ADP & inorganic phosphate / NADH from NAD+ /pyruvate Pyruvate = transported from the cytosol to the mitochondrion = where further oxidation occurs In the Krebs cycle = carbon dioxide is released from organic intermediates = ATP is synthesized from ADP + inorganic phosphate & electrons are transferred to the coenzymes NADH + FADH2 Electrons extracted in glycolysis & Krebs cycle reactions = transferred by NADH & FADH2 to the electron transport chain in the inner mitochondrial membranE When electrons are transferred between molecules in a sequence of reactions as they pass through the ETC = an electrochemical gradient of protons (hydrogen ions) across the inner mitochondrial membrane is established Fermentation allows glycolysis to proceed in the absence of oxygen & produces organic molecules (including alcohol & lactic acid = as waste products) The conversion of ATP to ADP = releases energy = which is used to power many metabolic processes SYI-3.A = Explain the connection between variation in the number & types of molecules within cells to the ability of the organism to survive and/or reproduce in different environments. Variation at the molecular level = provides organisms with the ability to respond to a variety of environmental stimuli Variation in the number & types of molecules within cells provides organisms a greater ability to survive and/or reproduce in different environments Kk
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